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Secondary structure and function of the 5 '-proximal region of the equine arteritis virus RNA genome

机译:马动脉炎病毒RNA基因组5'-近端区域的二级结构和功能

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Nidoviruses produce an extensive 3'-coterminal nested set of subgenomic mRNAs, which are used to express their structural proteins. In addition, arterivirus and coronavirus mRNAs contain a common 5' leader sequence, derived from the genomic 5' end. The joining of this leader sequence to different segments (mRNA bodies) from the genomic 3'-proximal region presumably involves a unique mechanism of discontinuous minus-strand RNA synthesis. Key elements in this process are the so-called transcription-regulating sequences (TRSs), which determine a base-pairing interaction between sense and antisense viral RNA that is essential for leader-to-body joining. To identify RNA structures in the 5'-proximal region of the equine arteritis virus genome that may be involved in subgenomic mRNA synthesis, a detailed secondary RNA structure model was established using bioinformatics, phylogenetic analysis, and RNA structure probing. According to this structure model, the leader TRS is located in the loop of a prominent hairpin (leader TRS hairpin; LTH). The importance of the LTH was supported by the results of a mutagenesis study using an EAV molecular clone. Besides evidence for a direct role of the LTH in subgenomic RNA synthesis, indications for a role of the LTH region in genome replication and/or translation were obtained. Similar LTH structures could be predicted for the 5'-proximal region of all arterivirus genomes and, interestingly, also for most coronaviruses. Thus, we postulate that the LTH is a key structural element in the discontinuous subgenomic RNA synthesis and is likely critical for leader TRS function. [References: 54]
机译:Nidovirus病毒产生大量亚基因组mRNA的3'-coterminal嵌套套,用于表达其结构蛋白。此外,小动脉病毒和冠状病毒mRNA包含一个共同的5'前导序列,该序列源自基因组5'末端。该前导序列与基因组3'-近端区域的不同片段(mRNA体)的连接大概涉及不连续的负链RNA合成的独特机制。此过程中的关键要素是所谓的转录调节序列(TRS),它确定有义和反义病毒RNA之间的碱基配对相互作用,这对于前导者与身体的连接至关重要。为了鉴定马动脉炎病毒基因组5'-近端区域中可能参与亚基因组mRNA合成的RNA结构,使用生物信息学,系统发育分析和RNA结构探测方法建立了详细的二级RNA结构模型。根据此结构模型,引导者TRS位于突出发夹(引导者TRS发夹; LTH)的环中。使用EAV分子克隆进行诱变研究的结果证实了LTH的重要性。除了LTH在亚基因组RNA合成中具有直接作用的证据外,还获得了LTH区域在基因组复制和/或翻译中作用的指示。可以预测所有动脉病毒基因组的5'-近端区域都具有相似的LTH结构,有趣的是,大多数冠状病毒也具有类似的LTH结构。因此,我们假设LTH是不连续的亚基因组RNA合成中的关键结构元素,可能对前导TRS功能至关重要。 [参考:54]

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